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市场调查报告书
商品编码
1702267
金属射出成型市场规模、份额、趋势及预测(依材料类型、最终用途产业及地区),2025 年至 2033 年Metal Injection Molding Market Size, Share, Trends and Forecast by Material Type, End Use Industry, and Region, 2025-2033 |
2024 年全球金属射出市场规模价值 46 亿美元。展望未来, IMARC Group估计到 2033 年市场规模将达到 95 亿美元,2025 年至 2033 年的复合年增长率为 8.21%。 2024年,美国占据北美金属射出成型市场83.38%的份额。由于电子和医疗保健领域对微型组件的需求不断增加、汽车行业对轻量化部件的需求不断增加、医疗和牙科应用的需求不断扩大、人们对该技术在大规模生产中的成本效益的认识不断提高以及材料科学的快速进步,市场正在快速增长。
金属注射成型 (MIM) 是一种先进、经济高效的金属加工工艺,其中将细粉状金属与黏合剂材料混合以製造原料的输出。这些原料在註塑成型的帮助下进一步固化并精确成型。成型后,将成品原料调理操作,以烧结、去除堵塞物和使粉末緻密化。 MIM 为小型成品金属产品提供耐腐蚀、热稳定性、高机械强度和尺寸稳定性,因此广泛应用于各种工业应用。
推动金属注塑市场成长的主要关键因素之一是汽车产业广泛采用该产品来大量生产精密、轻量、高品质的机动零件。这些零件进一步用于製造各种车辆零件,例如转向器、变速箱、锁定机构和涡轮增压器。同时,金属注射成型技术在製造手术设备(包括消融电极、内视镜抓取器、剪刀、矫形外科工具和创伤板)中的广泛应用是另一个促进成长的因素。此外,製造商对 MIM 解决方案而非传统成型程序的倾向转变也促进了市场的成长。金属射出成型有助于以可负担的价格完成操作,并减少生产原料所花费的生产时间和原材料的浪费。其他因素,例如快速的城市化和工业化(特别是在新兴经济体中)、主要参与者之间的战略合作以及为引入先进的 MIM 进行大规模设计复杂形状的金属部件而不断增加的研发 (R&D) 活动投资,正在为市场创造积极的前景。
推动金属注塑市场成长的主要关键因素之一是汽车产业广泛采用该产品来大量生产精密、轻量、高品质的机动零件。这些零件进一步用于製造各种车辆零件,例如转向器、变速箱、锁定机构和涡轮增压器。同时,金属注射成型技术在製造手术设备(包括消融电极、内视镜抓取器、剪刀、矫形外科工具和创伤板)中的广泛应用是另一个促进成长的因素。此外,製造商对 MIM 解决方案而非传统成型程序的倾向转变也促进了市场的成长。金属射出成型有助于以可负担的价格完成操作,并减少生产原料所花费的生产时间和原材料的浪费。其他因素,例如快速的城市化和工业化(特别是在新兴经济体中)、主要参与者之间的战略合作以及为引入先进的 MIM 进行大规模设计复杂形状的金属部件而不断增加的研发 (R&D) 活动投资,正在为市场创造积极的前景。
The global metal injection molding market size was valued at USD 4.6 Billion in 2024. Looking forward, IMARC Group estimates the market to reach USD 9.5 Billion by 2033, exhibiting a CAGR of 8.21% from 2025-2033. In 2024, United States accounted for 83.38% of the metal injection modeling market share in North America. The market is growing rapidly due to the increasing requirement for miniaturized components in electronics and healthcare sectors, rising demand for lightweight parts in the automotive industry, expanding need in medical and dental applications, heightened awareness about the technique's cost-efficiency in mass production, and rapid advancements in material science.
Metal injection molding (MIM) refers to an advanced, cost-effective, metalworking procedure, wherein finely powdered metal is mixed with binder material to manufacture the output of feedstocks. These raw materials are further solidified and shaped accurately with the assistance of injection molding. After formation, conditioning operations are executed on finished feedstocks for sintering, removing blinders, and densifying the powders. MIM offer corrosion, thermal stability, high mechanical strength, and dimensional stability to small, finished metal products, due to which they are extensively employed across various industrial applications.
One of the key factors primarily driving the metal injection molding market growth is the widespread product adoption in the automotive sector for producing precise, lightweight, and high-quality motorized parts in large quantity. These components are further used to manufacture various vehicular parts, such as steering, gearbox, locking mechanisms and turbochargers. In line with this, the extensive deployment of metal injection molding technology for manufacturing surgical equipment, including ablation electrodes, endoscopic graspers, scissors, orthopedic tools, and trauma plates is acting as another growth-inducing factor. Moreover, the shifting inclination of manufacturers toward MIM solutions over conventional molding procedures is contributing to the market growth. Metal injection molding assists in completing operations at affordable prices and reducing the production time and wastage of raw materials used in the production of feedstocks. Other factors, such as rapid urbanization and industrialization, particularly in emerging economies, strategic collaborations amongst key players and the rising investments in research and development (R&D) activities to introduce advanced MIM for mass designing complex shaped metal components are creating a positive outlook for the market.
One of the key factors primarily driving the metal injection molding market growth is the widespread product adoption in the automotive sector for producing precise, lightweight, and high-quality motorized parts in large quantity. These components are further used to manufacture various vehicular parts, such as steering, gearbox, locking mechanisms and turbochargers. In line with this, the extensive deployment of metal injection molding technology for manufacturing surgical equipment, including ablation electrodes, endoscopic graspers, scissors, orthopedic tools, and trauma plates is acting as another growth-inducing factor. Moreover, the shifting inclination of manufacturers toward MIM solutions over conventional molding procedures is contributing to the market growth. Metal injection molding assists in completing operations at affordable prices and reducing the production time and wastage of raw materials used in the production of feedstocks. Other factors, such as rapid urbanization and industrialization, particularly in emerging economies, strategic collaborations amongst key players and the rising investments in research and development (R&D) activities to introduce advanced MIM for mass designing complex shaped metal components are creating a positive outlook for the market.
The competitive landscape of the industry has also been examined along with the profiles of the key players being Amphenol Corporation, ARC Group Worldwide Inc., ATW Companies Inc., CMG Technologies, CN Innovations Ltd., Dean Group International Ltd, Ernst Reiner GmbH & Co. KG, Metal Powder Products LLC, Parmaco Metal Injection Molding AG, Sintex a/s, Smith Metal Products and Tanfel Metal.